He Ni, Zhao Tao
College of Chemistry and Chemical Engineering, Shanghai University of Engineering Science Shanghai 201620 China
RSC Adv. 2023 Mar 8;13(11):7719-7730. doi: 10.1039/d3ra00319a. eCollection 2023 Mar 1.
Herein, we report fluorescence microscopy analysis of the interaction between propranolol (PPN), a beta-adrenergic blocking agent, and planar supported lipid bilayers (SLBs), as model membranes. The results indicate that PPN can remarkably promote largescale remodeling in SLBs with various lipid compositions. It was found that PPN insertion induces the formation of long microtubules that can retract into hemispherical caps on the surface of the bilayer. These transformations are dynamic, partially reversible, and dependent upon the drug concentration. Quantitative analysis revealed a three-step model for PPN-lipid bilayer interaction, with the first step involving interfacial electrostatic adsorption, the second step centered on hydrophobic insertion, and the third step associated with membrane disruption and hole formation. By introducing cholesterol, phosphoethanolamine, phosphatidylglycerol, and phosphatidylserine lipids into the phosphocholine SLBs, it was illustrated that both the chemistry of the lipid headgroups and the packing of lipid acyl chains can substantially affect the particular steps in the interactions between PPN and lipid bilayers. Our findings may help to elucidate the possible mechanisms of PPN interaction with lipid membranes, the toxic behavior and overdosage scenarios of beta-blockers, and provide valuable information for drug development and modification.
在此,我们报告了对作为模型膜的平面支撑脂质双层(SLB)与β-肾上腺素能阻滞剂普萘洛尔(PPN)之间相互作用的荧光显微镜分析。结果表明,PPN能够显著促进具有各种脂质组成的SLB中的大规模重塑。研究发现,PPN插入会诱导形成长微管,这些微管可缩回到双层表面的半球形帽中。这些转变是动态的、部分可逆的,并且取决于药物浓度。定量分析揭示了PPN-脂质双层相互作用的三步模型,第一步涉及界面静电吸附,第二步以疏水插入为中心,第三步与膜破坏和孔形成相关。通过将胆固醇、磷酸乙醇胺、磷脂酰甘油和磷脂酰丝氨酸脂质引入磷酸胆碱SLB中,表明脂质头部基团的化学性质和脂质酰基链的堆积都可以显著影响PPN与脂质双层相互作用的特定步骤。我们的研究结果可能有助于阐明PPN与脂质膜相互作用的可能机制、β-阻滞剂的毒性行为和过量用药情况,并为药物开发和修饰提供有价值的信息。